Crystal structure of aspartate racemase from Pyrococcus horikoshii OT3 and its implications for molecular mechanism of PLP-independent racemization

被引:54
作者
Liu, LJ
Iwata, K
Kita, A
Kawarabayashi, Y
Yohda, M
Miki, K [1 ]
机构
[1] Kyoto Univ, Grad Sch Sci, Dept Chem, Sakyo Ku, Kyoto 6068502, Japan
[2] Tokyo Univ Agr & Technol, Fac Engn, Dept Biotechnol & Life Sci, Tokyo 1848588, Japan
[3] Natl Inst Technol & Evaluat, Ctr Biotechnol, Shibuya Ku, Tokyo 1510066, Japan
[4] RIKEN, Harima Inst SPring 8, Mikazuki, Hyogo 6795148, Japan
基金
日本学术振兴会;
关键词
aspartate racemase; PLP-independent racemase; Pyrococcus horikoshii OT3; structural symmetry; molecular recognition;
D O I
10.1016/S0022-2836(02)00296-6
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
There exists a D-enantiomer of aspartic acid in lactic acid bacteria and several hyperthermophilic archaea, which is biosynthesized from the L-enantiomer by aspartate racemase. Aspartate racemase is a representative pyridoxal 5'-phosphate (PLP)-independent amino acid racemase. The "two-base" catalytic mechanism has been proposed for this type of racemase, in which a pair of cysteine residues are utilized as the conjugated catalytic acid and base. We have determined the three-dimensional structure of aspartate racemase from the hyperthermophilic archaeum Pyrococcus horikoshii OT3 at 1.9 Angstrom resolution by X-ray crystallography and refined it to a crystallographic R factor of 19.4% (R-free of 22.2%). This is the first structure reported for aspartate racemase, indeed for any amino acid racemase from archaea. The crystal structure revealed that this enzyme forms a stable dimeric structure with a strong three-layered inter-subunit interaction, and that its subunit consists of two structurally homologous alpha/beta domains, each containing a four-stranded parallel beta-sheet flanked by six alpha-helices. Two strictly conserved cysteine residues (Cys82 and Cys194), which have been shown biochemically to act as catalytic acid and base, are located on both sides of a cleft between the two domains. The spatial arrangement of these two cysteine residues supports the "two-base" mechanism but disproves the previous hypothesis that the active site of aspartate racemase is located at the dimeric interface. The structure revealed a unique pseudo mirror-symmetry in the spatial arrangement of the residues around the active site, which may explain the molecular recognition mechanism of the mirror-symmetric aspartate enantiomers by the non-mirror-symmetric aspartate racemase. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:479 / 489
页数:11
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